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Effect of packing structure on anisotropic effective thermal conductivity of thin ceramic pebble bed

机译:包装结构对薄陶瓷卵石床各向异性有效导热系数的影响

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Helium cooled solid breeder blanket as an important blanket candidate of the Tokamak fusion reactor uses ceramic pebble bed for tritium breeding. Considering the poor effective thermal conductivity of the ceramic breeder pebble bed, thin structure of tritium breeder pebble bed is usually adopted in the blanket design. The container wall has a great influence on the thin pebble bed packing structure, especially for the assembly of mono-sized particles, and thin pebble bed will appear anisotropic effective thermal conductivity phenomenon. In this paper, thin ceramic pebble beds composed of 1?mm diameterLi4SiO4particles are generated by the EDEM 2.7. The effective thermal conductivity of different thickness pebble beds in the three-dimensional directions are analyzed by three-dimensional thermal network method. It is observed that thinLi4SiO4pebble bed showing anisotropic effective thermal conductivity under the practical design size. Normally, the effective thermal conductivity along the bed vertical direction is higher than the horizontal direction due to the gravity effect. As the thickness increases from 10?mm to 40?mm, the effective thermal conductivity of the pebble bed gradually increases.
机译:氦气冷却固体种植毯作为托卡马克融合反应器的重要毯子候选者使用陶瓷卵石床进行氚繁殖。考虑到陶瓷饲养卵石床的有效导热系数差,毛毯设计通常采用氚种群卵石床的薄结构。容器壁对薄卵石床填料结构有很大影响,特别是对于单尺寸颗粒的组装,薄的卵石床将出现各向异性有效的导热性现象。在本文中,由1?mm直径的薄陶瓷卵石床由Edem 2.7产生。通过三维热网络方法分析了三维方向上不同厚度卵石床的有效导热率。观察到,在实用的设计尺寸下,Thinli4SiO 4pble床显示出各向异性有效的导热系数。通常,由于重力效应,沿床垂直方向的有效导热率高于水平方向。随着厚度从10Ωmm增加到40Ωmm,卵石床的有效导热率逐渐增加。

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